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Organic Silane Coupling Agent For Electronic Industry Applications
Apr 23, 2018

High-performance materials made with organosilane coupling agent technology are entering the increasingly demanding electronic and electrical fields today. Silicone seals and protects extremely sensitive circuits, semiconductors, and equipment from heat, contamination, and accidental damage, and helps ensure the continued supply of electricity.


Protection equipment: Organic silane coupling agent can provide perfect sealing function and protect extremely sensitive electronic components and components from external pollution or movement. This point has important implications for ensuring the long-term stability and performance of many electronic products. In addition, the silicone material does not corrode and does not ignite spontaneously, meeting the most stringent safety and purity requirements in the manufacture and manufacture of electronic products. Silicone insulation helps protect circuits on televisions, computers, and aircraft video displays from heat, dirt, and dust. At the same time, silicones are well suited for high voltage applications and can be used to insulate ground and underground cables and power lines.


Enhanced Performance: As electronic devices become thinner, smaller, and faster, the outstanding physical properties of organic silane coupling agents allow them to be used in new applications: high temperature and low temperature stability, outstanding The insulation, strength, elasticity and toughness, moisture resistance, chemical stability, UV resistance and other environmental protection features can be used to bond and protect a wide range of materials.


Organic Silane Coupling Agents Typical Applications: Silicone sealants, adhesives, and conformal coatings can be used for circuits, connectors, capacitors, coils, transistors, and kinescopes in most consumer and commercial electronics applications.


Automotive: Silicone can isolate extremely sensitive automotive electronic components. Silicones help protect the performance of electronic components at extreme temperatures from moisture, salt and other corrosive environments. Silicone helps to ensure reliable operation of electronic components in airbags, body components, brake systems, ignition, fuel, and air systems and transmissions.


Aerospace and Aerospace: Silicones can withstand the pressure and temperature limits necessary in aerospace and aerospace. Silicone adhesives, sealants and potting agents ensure that electronic components and systems perform well. For example, these materials can protect electronic printed circuit boards from humidity and pollution.


High-performance, high-protection, multi-purpose, leading the lifestyle Silicone is changing our present and portraying our future


Communication: Organosilane coupling agents can seal and bond mechanical and electronic components in household and office equipment, including power transistor rectification


Thermal switch. The keypad, keyboard, and photocopier drums are all made of silicone - the hard coatings of computers, fax machines, telephones, and home entertainment devices are all made of silicone.


Microelectronics and Microprocessors: High-purity silicon (made of silicone) is critical for sensitive circuits. Technological advances have increased processing capacity and reduced size, and increasingly tight electronic modules have placed higher demands on thermal stability and moisture resistance. Silicone can meet the ever-changing needs of microelectronic devices, components, components, and systems in the IC packaging industry.


Circuit boards and electronic modules: Silicones are critical for the assembly and protection of finished circuit boards or electronic modules. A variety of silicone materials, conformal coatings, sealants, and gels enhance the material's insulation and chemical resistance, continue to protect against the effects of moisture, moisture, vibration, overheating, corrosion, and radiation. Sealants, adhesives, and primers can be easily fabricated with a variety of common materials including ceramics, reactive metals, and filled plastics. This facilitates aseptic and rapid mass production of electronic systems.


Semiconductors: Silicones can encapsulate and protect semiconductors, the essential components of virtually any electronic device. High-voltage/power applications such as industrial motors, locomotives, and power supplies that require high-voltage switching; high-frequency communications such as cell phone base stations, satellites, and radar; high-temperature applications for aircraft engines, oil drilling, and automotive electronics (including sensors that control fuel efficiency and emissions); The operation of these devices requires semiconductors.


Electricity and power supply: Power transmission depends on uncontaminated insulation and avoids costly and dangerous interruptions of the power supply system due to exposure to water, salt, sand or industrial pollutants. Silicones can provide high voltage insulating coatings to protect wires, power, and communications cables. Silicone insulation ensures that underground and ground cables can safely and continuously transmit high-energy power. The inherent durability of silicones can extend material life, reduce maintenance and replacement costs. As the use of silicones in the electronics and related industries continues to expand, consumers are benefiting every day. The silicone industry is continuously improving its existing uses and technologies to make it more versatile, easier to use, and cheaper.


Cleaning and Decontamination Fluids: Silicone emulsions are good cleaners that remove residual cleaning materials from space navigation systems and electronic equipment and medical device components.


Household appliances: automatic coffee makers, digital answering machines, microwave ovens, steam irons, stereo systems, televisions, washing machines, vacuum cleaners - almost all electronic components of home appliances are protected with silicone materials, and their service life is thus extended. . With silicone, home appliances are safer, more reliable and require less maintenance. Silicon also promoted the birth of new “smart appliances” - electronic systems are smaller and more advanced.


Consumer Benefits: Almost all silicon-powered, socket-powered, industrial-powered electronic devices or satellites are indispensable for silicones.


Silicone plays an indispensable role in the development of computer technology, telecommunications, and other related fields that require microchips. Without silicone protection to provide extreme temperature and pollution protection for products, many of the technologies and electronic innovations that are taken for granted today will not exist or operate effectively.

Silicones can save money. Its advantages and flexibility contribute to rapid, sterile and efficient production and installation. The durability of silicones can reduce the cleaning, maintenance, operation, and replacement costs of new and old electronic products.

Organic silane coupling agents can extend the life of electronic products. Silicones maintain their anti-wear and tear properties even under the harshest conditions. Therefore, it is the best component for durable goods such as computers, automobiles, airplanes and household appliances.

Silicone sealants and adhesives provide consumers with the durability and longevity they require.